Defects in bone are a constant and serious problem. They occur as a result of high energy trauma, congenital conditions or are created surgically to treat bone tumours or infection. Currently the treatment for these conditions is awkward for the patient, takes a long time and has a high complication rate. An elegant solution would be to mend the bone defect using the patient own cells; osteoblasts or mesenchymal stem cells seeded onto a supportive material scaffold. For successful regeneration of bone structures, a scaffold production technique has to be adopted that can precisely control porosity, internal pore architecture and fibre thickness, as well as maximising media diffusion and optimising scaffold mechanical properties so that the ...
Autogenous cell transplantation is one of the most promising new techniques being developed for bone...
Autogenous cell transplantation is one of the most promising new techniques being developed for bone...
Bone is a dynamic, highly vascularized tissue with a unique capacity to heal and remodel without sca...
The geometry of bone scaffolds plays a crucial role in bone tissue regeneration. This architecture, ...
The geometry of bone scaffolds plays a crucial role in bone tissue regeneration. This architecture, ...
The geometry of bone scaffolds plays a crucial role in bone tissue regeneration. This architecture, ...
The geometry of bone scaffolds plays a crucial role in bone tissue regeneration. This architecture, ...
Over the last decades, the number of occupational accidents associated with bone problems has increa...
The rising incidence of bone disorders, exacerbated by an increasing ageing population worldwide, ha...
Treatment of bone tissue injuries and diseases is still a great challenge for surgeons, but also for...
Scaffolds are essential in bone tissue engineering, as they provide support to cells and growth fact...
Large bone defects resulting from trauma or tumour surgery are still considered a major challenge in...
Engineering of hard tissues such as bone is a challenge because of the limited ability of the body t...
Bone defect treatment is still a challenge in clinics, and synthetic bone scaffolds with adequate me...
Scaffold based bone tissue engineering aims to heal bone defects with autologous cells and scaffolds...
Autogenous cell transplantation is one of the most promising new techniques being developed for bone...
Autogenous cell transplantation is one of the most promising new techniques being developed for bone...
Bone is a dynamic, highly vascularized tissue with a unique capacity to heal and remodel without sca...
The geometry of bone scaffolds plays a crucial role in bone tissue regeneration. This architecture, ...
The geometry of bone scaffolds plays a crucial role in bone tissue regeneration. This architecture, ...
The geometry of bone scaffolds plays a crucial role in bone tissue regeneration. This architecture, ...
The geometry of bone scaffolds plays a crucial role in bone tissue regeneration. This architecture, ...
Over the last decades, the number of occupational accidents associated with bone problems has increa...
The rising incidence of bone disorders, exacerbated by an increasing ageing population worldwide, ha...
Treatment of bone tissue injuries and diseases is still a great challenge for surgeons, but also for...
Scaffolds are essential in bone tissue engineering, as they provide support to cells and growth fact...
Large bone defects resulting from trauma or tumour surgery are still considered a major challenge in...
Engineering of hard tissues such as bone is a challenge because of the limited ability of the body t...
Bone defect treatment is still a challenge in clinics, and synthetic bone scaffolds with adequate me...
Scaffold based bone tissue engineering aims to heal bone defects with autologous cells and scaffolds...
Autogenous cell transplantation is one of the most promising new techniques being developed for bone...
Autogenous cell transplantation is one of the most promising new techniques being developed for bone...
Bone is a dynamic, highly vascularized tissue with a unique capacity to heal and remodel without sca...